International audienceThe shape of InAs nanostructures formed by molecular beam epitaxy on a (001) InP substrate in the Stranski-Krastanow growth mode is studied. A transition from wires to round-shaped islands is observed as a function of the amount of InAs deposited. It is attributed to the non-equivalent energies of the A and B facets existing in zinc blende materials (facets along [1-10] and [110], respectively). This surface energy anisotropy is considered to determine the nanostructure equilibrium shape from the balance between the elastic energy and the surface energy. At low volumes, the most energetically favorable shape is the wire-like shape, while at high volumes, the equilibrium shape is the island-like shape. The calculated si...
We have grown InAs self-assembled islands on vicinal GaAs( 001) substrates. Atomic force microscopy ...
We have studied the epitaxial growth of an InP shell on various pure InAs core nanowire crystal stru...
© 2018 Elsevier B.V. Quantum Dots (QDs) are considered as an efficient building block of many optoel...
International audienceThe shape of InAs nanostructures formed by molecular beam epitaxy on a (001) I...
We have studied the influence of Group V overpressure on the final shape and size of InAs nanostruct...
Self-assembled InAs nanostructures on (0 0 1) InP substrate have been grown by molecular beam epitax...
We report the influence of the matrix in InAs nanostructures grown on InP[001] substrates by solid s...
Strained InAs nanostructures have been grown by solid-source molecular beam epitaxy in In0.52Al0.48A...
For heteroepitaxial growth of InAs islands on GaAs(001), a transition of shapes is observed experime...
InAs self-organized nanostructures in In0.52Al0.48As matrix have been grown on InP (001) substrates ...
Scanning tunneling microscopy has been used to study the deposition by molecular-beam epitaxy of thi...
The structural and optical properties of InAs layers grown on high-index InP surfaces by molecular b...
In situ transmission electron microscopy investigation of structural transformation in III-V nanowir...
In this work, the quantum dot formation of InAs on In0:5Ga0:5As/InP(001) has been studied theoretica...
Self-aligned InAs quantum wires (QWRs) or three-dimensional (3D) islands are fabricated on GaAs(331)...
We have grown InAs self-assembled islands on vicinal GaAs( 001) substrates. Atomic force microscopy ...
We have studied the epitaxial growth of an InP shell on various pure InAs core nanowire crystal stru...
© 2018 Elsevier B.V. Quantum Dots (QDs) are considered as an efficient building block of many optoel...
International audienceThe shape of InAs nanostructures formed by molecular beam epitaxy on a (001) I...
We have studied the influence of Group V overpressure on the final shape and size of InAs nanostruct...
Self-assembled InAs nanostructures on (0 0 1) InP substrate have been grown by molecular beam epitax...
We report the influence of the matrix in InAs nanostructures grown on InP[001] substrates by solid s...
Strained InAs nanostructures have been grown by solid-source molecular beam epitaxy in In0.52Al0.48A...
For heteroepitaxial growth of InAs islands on GaAs(001), a transition of shapes is observed experime...
InAs self-organized nanostructures in In0.52Al0.48As matrix have been grown on InP (001) substrates ...
Scanning tunneling microscopy has been used to study the deposition by molecular-beam epitaxy of thi...
The structural and optical properties of InAs layers grown on high-index InP surfaces by molecular b...
In situ transmission electron microscopy investigation of structural transformation in III-V nanowir...
In this work, the quantum dot formation of InAs on In0:5Ga0:5As/InP(001) has been studied theoretica...
Self-aligned InAs quantum wires (QWRs) or three-dimensional (3D) islands are fabricated on GaAs(331)...
We have grown InAs self-assembled islands on vicinal GaAs( 001) substrates. Atomic force microscopy ...
We have studied the epitaxial growth of an InP shell on various pure InAs core nanowire crystal stru...
© 2018 Elsevier B.V. Quantum Dots (QDs) are considered as an efficient building block of many optoel...